Spermatogenesis is a highly complex cell differentiation process that is governed by unique transcriptional regulation and massive chromatin alterations, which are required for meiosis and postmeiotic maturation. The underlying mechanisms involve alterations to the epigenetic layer, including histone modifications and incorporation of testis-specific nuclear proteins, such as histone variants and protamines. Histones can undergo methylation, acetylation, and phosphorylation among other modifications at their N-terminus, and these modifications can signal changes in chromatin structure. We have identified the temporal and spatial distributions of histone H3 mono-, di-, and trimethylation at lysine 4 (K4), and the lysine-specific histone deme...
Epigenetics has been defined by Goldberg et al. [1] as the study of heritable changes in gene expres...
A father's lifetime experiences can be transmitted to his offspring to affect health and development...
BACKGROUND: Histone methylation is thought to be central to the epigenetic mechanisms that maintain ...
Spermatogenesis is a highly complex cell differentiation process that is governed by unique transcri...
Chromatin structure plays an important role in the regulation of gene expression. Methylation of lys...
International audienceEpigenetic regulation of gene expression is tightly controlled by the dynamic ...
Epigenetic modifications, and methylation of histones in particular, dynamically change during sperm...
In higher eukaryotes, histone methylation is involved in maintaining cellular identity during somati...
Histone modification has been implicated in the regulation of mammalian spermatogenesis. However, th...
International audienceOnly some imprinting control regions (ICRs) acquire their DNA methylation in t...
AbstractOn fertilisation, gametes undergo epigenetic reorganisation and re-establish totipotency. He...
Spermatozoa have a unique genome organization: their chromatin is almost completely devoid of histon...
During spermatogenesis, nuclear architecture of male germ cells is dynamically changed and epigeneti...
AbstractChromatin structure plays an important role in the regulation of gene expression. Methylatio...
During spermiogenesis, haploid spermatids undergo extensive chromatin remodeling events in which his...
Epigenetics has been defined by Goldberg et al. [1] as the study of heritable changes in gene expres...
A father's lifetime experiences can be transmitted to his offspring to affect health and development...
BACKGROUND: Histone methylation is thought to be central to the epigenetic mechanisms that maintain ...
Spermatogenesis is a highly complex cell differentiation process that is governed by unique transcri...
Chromatin structure plays an important role in the regulation of gene expression. Methylation of lys...
International audienceEpigenetic regulation of gene expression is tightly controlled by the dynamic ...
Epigenetic modifications, and methylation of histones in particular, dynamically change during sperm...
In higher eukaryotes, histone methylation is involved in maintaining cellular identity during somati...
Histone modification has been implicated in the regulation of mammalian spermatogenesis. However, th...
International audienceOnly some imprinting control regions (ICRs) acquire their DNA methylation in t...
AbstractOn fertilisation, gametes undergo epigenetic reorganisation and re-establish totipotency. He...
Spermatozoa have a unique genome organization: their chromatin is almost completely devoid of histon...
During spermatogenesis, nuclear architecture of male germ cells is dynamically changed and epigeneti...
AbstractChromatin structure plays an important role in the regulation of gene expression. Methylatio...
During spermiogenesis, haploid spermatids undergo extensive chromatin remodeling events in which his...
Epigenetics has been defined by Goldberg et al. [1] as the study of heritable changes in gene expres...
A father's lifetime experiences can be transmitted to his offspring to affect health and development...
BACKGROUND: Histone methylation is thought to be central to the epigenetic mechanisms that maintain ...